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Dynamic susceptibility of reentrant Fe-rich inhomogeneous amorphous alloys

机译:重入富铁非均质非晶合金的动态磁化率

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Melt-spun amorphous alloys of Fe_(91)Zr_9, Fe_(91)Zr_7B_2, Fe_(90)Zr_7B_3 and Fe_(88)Zr_8B_4 have been characterized by AC susceptibility at frequencies between 30 Hz and 10 KHz. The measurements reflect the existence of reentrant spin glass transitions below 40 K for all cases. The transition shift per frequency decade is large compared to the observed in conventional spin-glass alloys. The shift value increases with the boron content and becomes closer to values in fine-particle systems. We find that the relaxation in Fe_(91)Zr_9 follows a critical slowing down at the reentrant transition, with exponents zv = 7.2 and β = 0.7. The non-linear susceptibility displays a peak at the transition in this alloy, but wider than in canonical spin glasses. A Vogel-Fulcher (VF) activation process can explain the frequency variation in all the Fe-Zr-B alloys. The reduction of the ideal glass temperature in the VF approach, found in the higher Boron content alloys, is an indication of a superparamagnetic-like behavior. The behavior shown by these alloys is intermediate between a collective freezing and superparamagnetic-like relaxation. We propose that this is arising due to a heterogeneous spin structure. The inclusion of a reduced amount of B, affects the magnetic spin structure.
机译:Fe_(91)Zr_9,Fe_(91)Zr_7B_2,Fe_(90)Zr_7B_3和Fe_(88)Zr_8B_4的熔纺非晶态合金的特征是在30 Hz至10 KHz之间的频率下具有AC磁化率。这些测量反映了在所有情况下低于40 K的折返自旋玻璃化转变的存在。与在常规自旋玻璃合金中观察到的相比,每十倍频的跃迁偏移很大。位移值随硼含量的增加而增加,越来越接近于微粒系统中的值。我们发现,Fe_(91)Zr_9的弛豫遵循重入过渡时的临界减慢速度,指数zv = 7.2,β= 0.7。非线性磁化率在此合金中的过渡处显示一个峰值,但比标准自旋玻璃宽。 Vogel-Fulcher(VF)活化过程可以解释所有Fe-Zr-B合金中的频率变化。在较高硼含量的合金中发现,采用VF方法降低理想玻璃温度表明了类似超顺磁性的行为。这些合金表现出的行为介于集体冻结和超顺磁性类弛豫之间。我们认为这是由于异质自旋结构引起的。减少的B含量会影响磁自旋结构。

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